하드웨어 및 소프트웨어 기반 안티탬퍼링 기술의 종합 평가 방안 조사

Vol. 35, No. 2, pp. 441-461, 4월. 2025
10.13089/JKIISC.2025.35.2.441, Full Text:
Keywords: Hardware Security, Software Security, Trusted Platform Module, Anti Tampering, Tampering
Abstract

With the rapid proliferation of digital technologies, the importance of anti-tampering measures for safeguarding sensitive data and ensuring system integrity has become paramount. This study conducts a systematic analysis of hardware- and software-based anti-tampering technologies, categorizing them into four key domains: packaging, board and chip, code, and software. The characteristics and evaluation methodologies of each category are comprehensively analyzed to provide a holistic understanding of the field. To facilitate a standardized assessment, this paper comprehensively analyzes key metrics such as response time, detection accuracy, physical durability, and environmental adaptability in an integrated manner. Our analysis serves as a structured and objective methodology for evaluating the effectiveness of anti-tampering technologies, enabling a consistent evaluation for comparison and analysis. Furthermore, our research is intended to guide the design and validation of security technologies across a wide range of applications, including defense systems, financial services, and IoT devices. This study aims to enhance the robustness and reliability of security solutions, paving the way for more resilient protection against increasingly sophisticated tampering techniques.

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Cite this article
[IEEE Style]
이동호, 임재덕, 김민호, 조해현, 반영훈, 한지선, 심경민, 장혁, "Comprehensive Evaluation Framework for Hardware and Software-Based Anti-Tampering Technologies," Journal of The Korea Institute of Information Security and Cryptology, vol. 35, no. 2, pp. 441-461, 2025. DOI: 10.13089/JKIISC.2025.35.2.441.

[ACM Style]
이동호, 임재덕, 김민호, 조해현, 반영훈, 한지선, 심경민, and 장혁. 2025. Comprehensive Evaluation Framework for Hardware and Software-Based Anti-Tampering Technologies. Journal of The Korea Institute of Information Security and Cryptology, 35, 2, (2025), 441-461. DOI: 10.13089/JKIISC.2025.35.2.441.